Cargando…

Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting

BACKGROUND: Anterior cruciate ligament (ACL) deficiency leads to altered stability of the knee. The purpose of this study was to compare the dynamic, rotational stability of the knee, expressed as rotational stiffness, between anterior cruciate ligament-deficient (ACLD) knees, their contralateral in...

Descripción completa

Detalles Bibliográficos
Autores principales: Bohn, Marie Bagger, Petersen, Annemette Krintel, Nielsen, Dennis Brandborg, Sørensen, Henrik, Lind, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5059229/
https://www.ncbi.nlm.nih.gov/pubmed/27730595
http://dx.doi.org/10.1186/s40634-016-0062-4
_version_ 1782459389898129408
author Bohn, Marie Bagger
Petersen, Annemette Krintel
Nielsen, Dennis Brandborg
Sørensen, Henrik
Lind, Martin
author_facet Bohn, Marie Bagger
Petersen, Annemette Krintel
Nielsen, Dennis Brandborg
Sørensen, Henrik
Lind, Martin
author_sort Bohn, Marie Bagger
collection PubMed
description BACKGROUND: Anterior cruciate ligament (ACL) deficiency leads to altered stability of the knee. The purpose of this study was to compare the dynamic, rotational stability of the knee, expressed as rotational stiffness, between anterior cruciate ligament-deficient (ACLD) knees, their contralateral intact knees (ACLI) and a knee healthy control group during walking, running and 90° pivoting. We hypothesized a larger tibial internal rotation, a smaller knee joint external moment and a lower rotational stiffness in the ACLD group compared to the ACLI and the control group. METHODS: Kinematic and kinetic data were collected from both legs of 44 ACLD patients and 16 healthy controls during walking, running and a pivoting maneuver (descending a staircase and immediately pivoting 90° on the landing leg). Motion data were captured using 8 high-speed cameras and a force-plate. Reflective markers were attached to bony landmarks of the lower limb and rigid clusters on the shank and thigh (CASH model). Maximum internal tibial rotation and the corresponding rotational moment were identified for all tasks and groups and used to calculate rotational stiffness (= Δmoment /Δrotation) of the knee. RESULTS: The tibial internal rotation of the ACLD knee was not significantly different from the ACLI knee during all three tasks. During walking and running, the tibial rotation of the control group was significantly different from both legs of the ACL-injured patient. For pivoting, no difference in tibial rotation between knees of the ACLD, ACLI and the control group was found. Knee joint external moments were not significantly different between the three groups during walking and pivoting. During running, the moments of the ACLI group were significantly higher than both the knees of the ACLD and the control group. Rotational stiffness did not differ significantly between groups in any of the three tasks. CONCLUSION: A high-intensity activity combining stair descent and pivoting produces similar angular rotations, knee joint external moments and rotational stiffness in ACLD knees compared to ACLI knees and the control group. During running, the ACLI knee displayed a higher external moment than the ACLD and the healthy control group. This could indicate some type of protective strategy or muscular adaptation in the ACL-injured patients.
format Online
Article
Text
id pubmed-5059229
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Springer Berlin Heidelberg
record_format MEDLINE/PubMed
spelling pubmed-50592292016-10-27 Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting Bohn, Marie Bagger Petersen, Annemette Krintel Nielsen, Dennis Brandborg Sørensen, Henrik Lind, Martin J Exp Orthop Research BACKGROUND: Anterior cruciate ligament (ACL) deficiency leads to altered stability of the knee. The purpose of this study was to compare the dynamic, rotational stability of the knee, expressed as rotational stiffness, between anterior cruciate ligament-deficient (ACLD) knees, their contralateral intact knees (ACLI) and a knee healthy control group during walking, running and 90° pivoting. We hypothesized a larger tibial internal rotation, a smaller knee joint external moment and a lower rotational stiffness in the ACLD group compared to the ACLI and the control group. METHODS: Kinematic and kinetic data were collected from both legs of 44 ACLD patients and 16 healthy controls during walking, running and a pivoting maneuver (descending a staircase and immediately pivoting 90° on the landing leg). Motion data were captured using 8 high-speed cameras and a force-plate. Reflective markers were attached to bony landmarks of the lower limb and rigid clusters on the shank and thigh (CASH model). Maximum internal tibial rotation and the corresponding rotational moment were identified for all tasks and groups and used to calculate rotational stiffness (= Δmoment /Δrotation) of the knee. RESULTS: The tibial internal rotation of the ACLD knee was not significantly different from the ACLI knee during all three tasks. During walking and running, the tibial rotation of the control group was significantly different from both legs of the ACL-injured patient. For pivoting, no difference in tibial rotation between knees of the ACLD, ACLI and the control group was found. Knee joint external moments were not significantly different between the three groups during walking and pivoting. During running, the moments of the ACLI group were significantly higher than both the knees of the ACLD and the control group. Rotational stiffness did not differ significantly between groups in any of the three tasks. CONCLUSION: A high-intensity activity combining stair descent and pivoting produces similar angular rotations, knee joint external moments and rotational stiffness in ACLD knees compared to ACLI knees and the control group. During running, the ACLI knee displayed a higher external moment than the ACLD and the healthy control group. This could indicate some type of protective strategy or muscular adaptation in the ACL-injured patients. Springer Berlin Heidelberg 2016-10-12 /pmc/articles/PMC5059229/ /pubmed/27730595 http://dx.doi.org/10.1186/s40634-016-0062-4 Text en © The Author(s). 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Research
Bohn, Marie Bagger
Petersen, Annemette Krintel
Nielsen, Dennis Brandborg
Sørensen, Henrik
Lind, Martin
Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting
title Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting
title_full Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting
title_fullStr Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting
title_full_unstemmed Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting
title_short Three-dimensional kinematic and kinetic analysis of knee rotational stability in ACL-deficient patients during walking, running and pivoting
title_sort three-dimensional kinematic and kinetic analysis of knee rotational stability in acl-deficient patients during walking, running and pivoting
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5059229/
https://www.ncbi.nlm.nih.gov/pubmed/27730595
http://dx.doi.org/10.1186/s40634-016-0062-4
work_keys_str_mv AT bohnmariebagger threedimensionalkinematicandkineticanalysisofkneerotationalstabilityinacldeficientpatientsduringwalkingrunningandpivoting
AT petersenannemettekrintel threedimensionalkinematicandkineticanalysisofkneerotationalstabilityinacldeficientpatientsduringwalkingrunningandpivoting
AT nielsendennisbrandborg threedimensionalkinematicandkineticanalysisofkneerotationalstabilityinacldeficientpatientsduringwalkingrunningandpivoting
AT sørensenhenrik threedimensionalkinematicandkineticanalysisofkneerotationalstabilityinacldeficientpatientsduringwalkingrunningandpivoting
AT lindmartin threedimensionalkinematicandkineticanalysisofkneerotationalstabilityinacldeficientpatientsduringwalkingrunningandpivoting